STUDY ON REGULATORY EFFECT OF 2-HEXADECENAL ON NEUTROPHILS BY THE CHEMILUMINESCENT METHOD
Abstract
The effect of 2-hexadecenal on the formation of reactive oxygen and chlorine species (ROCS) in neutrophils stimulated to phagocytosis has been determined by chemiluminescent method. It has been established that at low concentrations this aldehyde demonstrates a priming effect on the cells, enhancing ROCS production, and at higher concentrations – significantly suppresses this process. Comparison the results of chemiluminescent and fluorescent analysis of the cell characteristics suggests that 2-hexadecenal is a signaling molecule, which exhibits the properties of the neutrophil function regulator by modifying the processes of intracellular signaling associated with changes in ROCS production, cytoskeleton reorganization, increase in unbound calcium ions levels in cytoplasm, reduction of mitochondrial membrane potential. It also induces apoptosis.
About the Authors
N. V. AmaegberiBelarus
4 Nezavisimosti Prosp., Minsk, 220030
G. N. Semenkova
Belarus
4 Nezavisimosti Prosp., Minsk, 220030
A. G. Lisovskaya
Belarus
4 Nezavisimosti Prosp., Minsk, 220030, Belarus;
Notre Dame Radiation Laboratory, University of Notre Dame, Notre Dame, Indiana, 46556 USA
S. S. Gusakova
Belarus
4 Nezavisimosti Prosp., Minsk, 220030
V. A. Prokasheva
Belarus
4 Nezavisimosti Prosp., Minsk, 220030
O. I. Shadyro
Belarus
4 Nezavisimosti Prosp., Minsk, 220030
References
1. C. Nathan. Nat. Rev. Immunol., 6 (2006) 173—182
2. T. N. Mayadas, X. Cullere, C. A. Lowell. Annu. Rev. Pathol., 9 (2014) 181—218
3. B. Amulic, C. Cazalet, G. L. Hayes, K. D. Metzler, A. Zychlinsky. Annu. Rev. Immunol., 30 (2012) 459—489
4. R. Grecian, M. K. B. Whyte, S. R. Walmsley. Br. Med. Bul., 128 (2018) 5—14
5. A. C. Carr, C. L. Hawkins, S. R. Thomas, R. Stocker, B. Frei. Free Radic. Biol. Med., 30, N 5 (2001) 526—536
6. J. M. Robinson. Histochem. Cell Biol., 130 (2008) 281—297
7. J. Arnhold, J. Flemmig. Arch. Biochem. Biophys., 500, N 1 (2010) 92—106
8. Ю. А. Владимиров, Е. В. Проскурнина. Успехи биол. химии, 49 (2009) 341—388
9. T. Kuznetsova, T. Kulahava, I. Zholnerevich, N. Amaegberi, G. Semenkova, O. Shadyro, J. Arnhold. Mol. Immunol., 87 (2017) 317—324
10. G. Semenkova, I. Zholnerevich, T. Kulahava, Z. Kvacheva. Free Rad. Biol. Med., 120, Suppl. 1 (2018) S100
11. A. A. Krjukov, G. N. Semenkova, S. N. Cherenkevich, V. Gerein. BioFactors, 26 (2006) 283—292
12. B. Halliwell, M. V. Clement, L. H. Longa. FEBS Lett., 486 (2000) 10—13
13. M. M. Tarpey, D. A. Wink, M. B. Grisham. Am. J. Physiol. Regul. Integr. Comp. Physiol., 286 (2004) 431—444
14. F. Caldefie-Che’zet, S. Walrand, C. Moinard, A. Tridon, J. Chassagne, M.-P. Vasson. Clin. Chim. Acta, 319 (2002) 9—17
15. C. P. LeBel, H. Ischiropoulos, S. C. Bondy. Chem. Res. Toxicol., 5 (1992) 227—231
16. M. Karlsson, T. Kurz, U. T. Brunk, S. E. Nilsson, C. I. Frennesson. Biochem. J., 428 (2010) 183—190
17. S. L. Hempel, G. R. Buettner, Y. Q. O'Malley, D. A. Wessels, D. M. Flaherty. Free Radic. Biol. Med., 27 (1999) 146—159
18. B. Kalyanaramana, V. Darley-Usmar, K. J. A. Davies, P. A. Dennery, H. J. Formanc, M. B. Grisham, G. E. Mann, K. Moore, L. J. Roberts II, H. Ischiropoulos. Free Radic. Biol. Med., 52, N 1 (2012) 1—6
19. N. Bartke, Y. A. Hannun. J. Lipid Res., 50 (2009) 591—596
20. O. Shadyro, A. Lisovskaya, G. Semenkova, I. Edimecheva, N. Amaegberi. Lipid Insight., 8 (2015) 1—9
21. Н. В. Амаэгбери, Г. Н. Семенкова, А. Г. Лисовская, З. Б. Квачева, О. И. Шадыро. Биофизика, 64, № 3 (2019) 544—551
22. N. V. Amaegberi, G. N. Semenkova, Z. B. Kvacheva, A. G. Lisovskaya, S. V. Pinchuk, O. I. Shadyro. Cell Biochem. Funct. (2019) 1—9
23. A. Kumar, H. S. Byun, R. Bittman, J. Saba. Cell Signal., 23 (2011) 1144—1152
24. Z. Liu, Y. Gong, H. S. Byun, R. Bittman. New J. Chem., 34 (2010) 470—475
25. A. Böyum. Scand. J. Immunol., 5 (1976) 9—15
26. F. Kato, M. Tanaka, K. Nakamura. Toxicol. in Vitro, 13 (1999) 923—929
27. D. Shugar. Biochim. Biophys. Acta, 8 (1952) 302—309
28. F. Sivandzade, A. Bhalerao, L. Cucullo. Bio. Protoc., 9, N 1 (2019) 1—13
29. R. A. Hirst, C. Harrison, K. Hirota, D. G. Lambert. Methods in Molecular Biology, Calcium Signaling Protocols: 2 nd ed., Totowa, Humana Press Inc. (1997) 37—45
30. A. Ishaque, M. Al-Rubeai. In: Methods in Biotechnology, Animal Cell Biotechnology, Methods and Protocols, 2 nd ed., Totowa, Humana Press Inc. (2007) 285—299
31. A. I. Kavalenka, G. N. Semenkova, S. N. Cherenkevich. Cell Tissue Biol., 1, N 6 (2007) 551—559
32. J. Zhang, X. Wang, V. Vikash, Q. Ye, D. Wu, Y. Liu, W. Dong. Oxid. Med. Cell. Longev. (2016); ID 4350965, http://dx.doi.org/10.1155/2016/4350965
33. A. Mo’csai, B. Walzog, C. A. Lowell. Cardiovasc. Res., 107 (2015) 373—385
34. B. M. Babior, J. D. Lambeth, W. Nauseef. Arch. Biochem. Biophys., 397 (2002) 342—344
35. B. Samuelsson. Z. Rheumatol., 50, Suppl. 1 (1991) 3—6
36. V. S. Hanna, E. A. A. Hafez. J. Adv. Res., 11 (2018) 23—32
37. K. Futosi, S. Fodor, A. Mócsai. Int. Immunopharmacol., 17 (2013) 638—650
38. M. Reyes-Reyes, N. Mora, A. Zentella, C. Rosales. J. Cell Sci., 114 (2001) 1579—1589
39. A. Bertram, K. Ley. Arch. Immunol. Ther. Exp. (Warsz), 59, N 2 (2011) 79—87
40. G. Huang, L. Z. Shi, H. Chi. Cytokine, 48, N 3 (2009) 161—169
41. D. Kim, C. L. Haynes. Analyst, 138, N 22 (2013) 1—17
42. S. Elmore. Toxicol. Pathol., 35 (2007) 495—516
43. P. Pinton, C. Giorgi, R. Siviero, E. Zecchini, R. Rizzuto. Oncogen., 27, N 50 (2008) 6407—6418
44. E. A. Papakonstanti, C. Stournaras. FEBS Lett., 582 (2008) 2120—2127
45. G. Forgacs, S. H. Yook, P. A. Janmey, H. Jeong, C. G. Burd. J. Cell Sci., 117 (2004) 2769—2775
Review
For citations:
Amaegberi N.V., Semenkova G.N., Lisovskaya A.G., Gusakova S.S., Prokasheva V.A., Shadyro O.I. STUDY ON REGULATORY EFFECT OF 2-HEXADECENAL ON NEUTROPHILS BY THE CHEMILUMINESCENT METHOD. Zhurnal Prikladnoii Spektroskopii. 2019;86(4):582-589. (In Russ.)